Cold traps2024-07-29T08:35:51+00:00

Cold traps

Variants

  • Dewar vessels
  • Cold traps
  • Tempering cup
  • Reaction vessels
  • Cryogenic container
  • Columns
  • Cold traps Cold finger S29 / SL29
  • Cold traps Cold finger S29-A / SL29-A
  • Cold traps Cold finger two-piece S29-Z / SL29-Z
  • Cold traps Cold finger V2A S54K16-Z / S54K25-Z
  • Cold traps High-performance cooling fingers V2A large
  • Cold trap complete KF /KFL
  • Cold trap complete KF-A / KFL-A
  • Cold trap complete two-piece KF-Z /KFL-Z
  • Cold trap V2A complete KF54VK16-Z / KF54VK25-Z
  • Cold traps High-performance cold traps V2A large complete
  • Cold trap GKF
  • Pump forks / Schlenklines
  • Cold gas systems
  • Cryostats
  • LHe Lifter
  • Sulphurizing flask
  • Wet extinguishing curve NLK
  • LN2 level control
  • Cold shrinking with LN2
  • Large insulation box
  • Heat protection container
  • Disposal cans
  • Chemical pumping station – CP
  • Chemical pumping station – GP
  • Cylindrical Dewar flask
  • Stainless steel Dewar flask
  • Dewargefaess-with flat bottom
  • Dewar flask – bowl shape
  • Dewar vessel – Dewar transport vessels
  • Dewar vessel – spherical shape
  • Dewar flask – large Dewar insulated flasks
  • Dewar flask – large Dewar insulated flasks in box form
  • Dewar flask – with laboratory flat flange
  • Dewar flask – with flange
  • Dewar vessel – Dewar transport vessels BIO-BE-CO2
  • Dewar vessel – Dewar transport vessels BIO-BE-LN2
  • Dewar flask – with standard thread
  • Dewar flask – with integrated magnetic agitator
  • Cryostats – LN2 Glass cryostats
  • Cryostats LN2 with head flange
  • Cryostats LN2 with constriction
  • Cryostats LN2 constriction+head flange
  • Cryostats LHe Glass cryostats
  • Cryostats LHe with head flange
  • Cryostats LHe with constriction
  • Cryostats LHe constriction+head flange
  • Cryostats LHe KGZ with LN2 cooling shield
  • Cryostats LHe KGS with LN2 cooling shield
  • Cryostats LHe Customized
  • Cryostats racks
  • Cryostats lids and accessories
  • Cryostats LHe Siphon
  • Cryostats catalog
  • Reaction vessel single-walled not temperature-controlled
  • Reaction vessel, double-walled, with heating jacket GL18
  • Double-walled reaction vessel with DN15 heating jacket
  • Three-walled reaction vessel with vacuum jacket and heating jacket DN15
  • Double-walled reaction vessel with bulbous heating jacket
  • Reaction vessel with flat bottom and heating jacket connection
  • Reaction vessel Sulfurizing flask with tempering jacket and volume scale
  • Reaction vessel Lid
  • Reaction vessel racks
  • Reaction vessel Complete table setups
  • Complete reaction vessel setups
  • Reaction vessel accessories
  • Reaction vessel Floor drains
  • Reaction vessel configuration wizard
  • Cold trap assistant
  • Special pumping stations
  • Cryogenic container type Apollo
  • Cryogenic container type Juno
  • Cryogenic container type aluminum
  • Cryogenic container type Alu-DMType Alu-DMT
  • Cryogenic container Special removal siphon
  • Cryogenic container LN2 Special withdrawal hoses
  • Cryogenic container handles
  • Cryogenic container type ARPEGE
  • Cryogenic container type VOYAGEUR
  • Cryogenic container type BIO
  • Cryogenic container type BIOSAFE
  • Cryogenic container type DSS-D
  • Cryogenic container Level Control LN2
  • Tempering beaker made of glass
  • Tempering cup made of stainless steel
  • Temperature control cup configuration wizard
  • Cold gas systems type T-G
  • Cold gas systems type TG-LKF
  • Cold gas systems type TG-LKF-H
  • Cold gas systems type TG-KKK
  • Cold gas systems type TG-RD
  • Cold gas systems Special systems
  • Cold gas systems Safety controller
  • Cold gas tool software
  • Cold gas systems configuration wizard
  • Cold gas systems type TG-RID
  • Cryogenic gloves and accessories

Cold traps / cold fingers made of glass or metal

A cold trap / cooling finger has the task of collecting and retaining the condensate from a gas flow, for example upstream of the vacuum pump.

As different substances may be present in the gas flow (e.g. water / solvents / acidic or alkaline gases), the condensation temperature of the substance to be condensed must be considered first. The material (glass or metal) and the geometry of the condensate freezing wall play a major role in a cold trap / cold finger. In order to increase the performance of a cold trap, it is sometimes fitted with baffles so that the gas in the condensation chamber is swirled more strongly and thus better condensation can take place on the cold inner wall of the cold trap.
In general, it should be noted that the liquid used for cooling (LN2 or CO2) should be at least 50°C colder than the condensation temperature of the substance that is to be condensed out of the gas flow. If, for example, a solvent such as methanol (melting point -98°C) or acetone (melting point -95°C) is to be filtered out of the gas flow, LN2 (approx. -196°C) is required as a coolant in order to achieve sufficient cooling capacity in the cold trap. The melting point of water is 0°C. This means that a mixture of CO2 and acetone (approx. -77°C) with water vapor would be sufficient.

Connection variants

Structure

To keep the performance of a cold trap/cooling finger constant, the coolant level (LN2 level) in the Dewar flask must also be kept constant. This can be achieved with an automatic LN2 level control. This type of level control ensures that the cold trap / cold finger is always supplied with sufficient LN2 coolant so that optimum condensation performance of the cold trap / cold finger is guaranteed. Complete LN2 level control systems for cold traps are available for this purpose.

Download cold trap catalog

A cold trap / cooling finger has the task of collecting and retaining the condensate from a gas flow, for example upstream of the vacuum pump.

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